Xiang Haiying, Yuan Guang, Shi Chuhan, Xu Li, Zhang Jianduo, Mi Qili, Gao Qian, Yang Wenwu, Huang Haitao, Wang Kunmiao, Zeng Wanli, Ning Yang, Wang Qian
Yunnan Academy of Tobacco Science, Kunming, 650106, People's Republic of China.
Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao, 266101, People's Republic of China.
Transgenic Res. 2025 Mar 27;34(1):17. doi: 10.1007/s11248-024-00419-4.
One of the nutrients that is necessary for plant growth and development is potassium (K). The uneven production and distribution of global potassium resources significantly challenge crop yields and quality. A moderate increase in the potassium content within plants can enhance both crop yield and quality. This study identifies the Shaker K channel NKT3A within the model crop, tobacco. The yeast heterologous expression system demonstrated its capability for K inward transportation. GUS staining and RT-qPCR analyses of the constructed promoter materials revealed NKT3A's activity during the tobacco seedling stage. Expression levels are higher in the leaf and stems, with low potassium levels inducing upregulation of its expression, also observed in roots. Gene editing technology was employed to construct overexpression and knockout mutants, with subsequent measurement of their phenotypes. Results indicate that NKT3A expression enhances facilitates potassium absorption and transport in tobacco seedlings under low potassium conditions. For the first time, this article identifies the Shaker potassium channel gene NKT3A, which functions as an inward rectifier K channel in tobacco. It elucidates the gene's role in regulating potassium distribution under low potassium conditions, thereby deepening our understanding of plant responses in such environments and offering a potential target for enhancing crop potassium use efficiency.
钾(K)是植物生长发育所必需的营养元素之一。全球钾资源生产和分布不均衡,对作物产量和品质构成了重大挑战。适度提高植物体内的钾含量可提高作物产量和品质。本研究在模式作物烟草中鉴定出了Shaker钾通道NKT3A。酵母异源表达系统证明了其钾内向转运能力。对构建的启动子材料进行GUS染色和RT-qPCR分析,揭示了NKT3A在烟草幼苗期的活性。其在叶片和茎中的表达水平较高,低钾水平会诱导其表达上调,在根中也观察到这种现象。利用基因编辑技术构建了过表达和敲除突变体,并对其表型进行了后续测定。结果表明,NKT3A的表达增强了低钾条件下烟草幼苗对钾的吸收和转运。本文首次鉴定出Shaker钾通道基因NKT3A,其在烟草中作为内向整流钾通道发挥作用。阐明了该基因在低钾条件下调节钾分布的作用,从而加深了我们对植物在这种环境下反应的理解,并为提高作物钾利用效率提供了一个潜在靶点。